EP4174240A1 - System with releasably interconnectable members - Google Patents
System with releasably interconnectable members Download PDFInfo
- Publication number
- EP4174240A1 EP4174240A1 EP22202782.3A EP22202782A EP4174240A1 EP 4174240 A1 EP4174240 A1 EP 4174240A1 EP 22202782 A EP22202782 A EP 22202782A EP 4174240 A1 EP4174240 A1 EP 4174240A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- projection
- groove
- elements
- sectional
- side wall
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Pending
Links
- 238000007789 sealing Methods 0.000 claims description 6
- 239000002023 wood Substances 0.000 claims description 4
- 239000013013 elastic material Substances 0.000 claims description 3
- 239000002184 metal Substances 0.000 claims description 3
- 239000000463 material Substances 0.000 description 8
- 238000004519 manufacturing process Methods 0.000 description 5
- 239000000853 adhesive Substances 0.000 description 2
- 230000001070 adhesive effect Effects 0.000 description 2
- 238000010276 construction Methods 0.000 description 2
- 230000000694 effects Effects 0.000 description 2
- GLGNXYJARSMNGJ-VKTIVEEGSA-N (1s,2s,3r,4r)-3-[[5-chloro-2-[(1-ethyl-6-methoxy-2-oxo-4,5-dihydro-3h-1-benzazepin-7-yl)amino]pyrimidin-4-yl]amino]bicyclo[2.2.1]hept-5-ene-2-carboxamide Chemical compound CCN1C(=O)CCCC2=C(OC)C(NC=3N=C(C(=CN=3)Cl)N[C@H]3[C@H]([C@@]4([H])C[C@@]3(C=C4)[H])C(N)=O)=CC=C21 GLGNXYJARSMNGJ-VKTIVEEGSA-N 0.000 description 1
- 229940125758 compound 15 Drugs 0.000 description 1
- 150000001875 compounds Chemical class 0.000 description 1
- 238000000034 method Methods 0.000 description 1
- 238000012986 modification Methods 0.000 description 1
- 230000004048 modification Effects 0.000 description 1
- 239000000025 natural resin Substances 0.000 description 1
- 239000000565 sealant Substances 0.000 description 1
- 238000007493 shaping process Methods 0.000 description 1
- 239000007787 solid Substances 0.000 description 1
Images
Classifications
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- E—FIXED CONSTRUCTIONS
- E04—BUILDING
- E04B—GENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
- E04B2/00—Walls, e.g. partitions, for buildings; Wall construction with regard to insulation; Connections specially adapted to walls
- E04B2/56—Load-bearing walls of framework or pillarwork; Walls incorporating load-bearing elongated members
- E04B2/70—Load-bearing walls of framework or pillarwork; Walls incorporating load-bearing elongated members with elongated members of wood
- E04B2/701—Load-bearing walls of framework or pillarwork; Walls incorporating load-bearing elongated members with elongated members of wood with integrated supporting and obturation function
- E04B2/702—Load-bearing walls of framework or pillarwork; Walls incorporating load-bearing elongated members with elongated members of wood with integrated supporting and obturation function with longitudinal horizontal elements
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- E—FIXED CONSTRUCTIONS
- E04—BUILDING
- E04B—GENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
- E04B1/00—Constructions in general; Structures which are not restricted either to walls, e.g. partitions, or floors or ceilings or roofs
- E04B1/02—Structures consisting primarily of load-supporting, block-shaped, or slab-shaped elements
- E04B1/10—Structures consisting primarily of load-supporting, block-shaped, or slab-shaped elements the elements consisting of wood
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- E—FIXED CONSTRUCTIONS
- E04—BUILDING
- E04B—GENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
- E04B2/00—Walls, e.g. partitions, for buildings; Wall construction with regard to insulation; Connections specially adapted to walls
- E04B2/56—Load-bearing walls of framework or pillarwork; Walls incorporating load-bearing elongated members
- E04B2/58—Load-bearing walls of framework or pillarwork; Walls incorporating load-bearing elongated members with elongated members of metal
- E04B2/60—Load-bearing walls of framework or pillarwork; Walls incorporating load-bearing elongated members with elongated members of metal characterised by special cross-section of the elongated members
- E04B2/62—Load-bearing walls of framework or pillarwork; Walls incorporating load-bearing elongated members with elongated members of metal characterised by special cross-section of the elongated members the members being formed of two or more elements in side-by-side relationship
Definitions
- the present invention relates to a system comprising at least two elements, in particular elongate structural elements, which are designed to be positively and releasably attached to one another, to which one element has a projection extending in a Z-direction and of constant cross-section which, an X-Y sectional view perpendicular viewed in the Z-direction, is designed in a dovetail-like manner, and the other element has a groove designed to correspond to the projection.
- Dovetail joints are used herein to mean joints in which the projection and groove each have opposing sidewalls which are inclined in opposite directions, with the projection increasing in width outwards and the groove increasing in width inward.
- Dovetail connections are characterized by a secure form fit.
- the elements can only be slid onto one another in the Z direction, ie in the direction in which the groove extends, which is not always desirable during assembly.
- elements that have a great length in the Z-direction such as beams or the like, can be difficult or impossible to fasten to one another if only little mounting space is available.
- connection techniques are regularly used, such as the use of screws or the like.
- simple plug-in connections can be used, which, however, have a further degree of freedom in the plug-in direction compared to dovetail-type connections and for this reason usually require additional securing using dowels or the like in order to achieve a stable structure.
- an object of the present invention is to create an alternative system of the type mentioned at the outset.
- the present invention provides a system of the type mentioned, which is characterized in that the projection and the groove are designed in such a way that the projection within the scope of a pivoting movement about a pivot axis extending in the Z direction, which is an outer edge of the groove is formed, can be positively inserted into the groove and released from it.
- the elements of the invention can not only be connected to one another by the projection being pushed into the groove in the Z direction, but also by the projection being pushed laterally in the Y direction. Direction is partially used in the groove and then pivoted about the pivot axis.
- the opposite side walls of the projection are offset from one another in relation to a straight line extending in the X-direction, in particular such that the first side wall ends where the opposite second side wall begins. Accordingly, the side wall of the projection that protrudes further in the Y-direction can first be easily inserted into the associated groove in order to then insert the other side wall of the projection into the groove as part of the pivoting movement about the pivot axis.
- the length and orientation of the first sidewall of the protrusion correspond to the length and orientation of a base side of an equilateral triangle in which, considering the interconnected state of two elements, the first side of the two equal sides extending from the pivot axis to the outer terminus of the first side wall of the projection and the second side of the two equal sides extends from the pivot axis to the inner terminus of the first side wall of the projection.
- This geometric shape ensures that the first side wall can be swiveled into the groove without any problems.
- an angle that the first side wall of the projection makes with a straight line extending in the Y-direction corresponds to an angle that the opposite second wall makes with the same straight line. In this way, a very good hold of the projection within the groove is achieved.
- the length of the first side wall and/or the second side wall of the protrusion is between 10mm and 40mm. This is particularly advantageous for large elements, such as large beams used in house construction, to ensure a secure connection.
- the projection and the groove are formed such that there is a predetermined clearance therebetween when the projection is positively fitted into the groove.
- Such play serves primarily to compensate for manufacturing tolerances in the manufacture of the elements or the projection and the groove and/or a distortion of the same.
- the game is advantageously provided in the form of a predetermined gap size to ensure an even balance.
- the system preferably has compensating elements made of elastic material which, taking into account the predetermined gap size, are designed in such a way that they can be inserted between adjacent elements during assembly, with the compensating elements acting as sealing elements can be executed.
- Such compensating elements can be used to eliminate play that is not required, with play fluctuations being compensated for when the elements are assembled, for example as a result of temperature changes or play fluctuations caused by moisture.
- the compensating elements as sealing elements, for example by suitably selecting the material and shaping the compensating elements, a watertight and/or moisture-tight and/or gas-tight connection can be achieved.
- the projection and/or the groove is provided with at least one incision that extends continuously in the Z direction and, viewing an X-Y sectional view perpendicular to the Z direction, transversely, is arranged in particular perpendicular to a straight line extending in the X-direction.
- Such an incision increases the elasticity of the projection and/or the groove, as a result of which the establishment of a connection between two elements can be facilitated, in particular if this or its projection or groove has manufacturing inaccuracies or has become distorted.
- the projection can be designed in relation to its dimensions such that when inserted into the groove it presses against the side walls of the groove, generating a prestress, which in some cases can be desirable to avoid a heavier achieve a detachable connection between the elements.
- the at least one incision preferably has a depth of between 10 mm and 40 mm and/or a width of between 1 mm and 3 mm. This is particularly advantageous for large elements, such as large beams used in building houses, in order to achieve the desired effect.
- the projection is provided with a first cut and the groove is provided with a second cut, the first cut and the second cut being aligned with each other.
- Such a structure is particularly effective in terms of the intended effect of the incisions.
- Each element preferably has at least one projection and at least one corresponding groove, which are arranged on different sides of the element, in particular on opposite sides. In this way, a large number of elements can be connected to one another in series.
- the elements can include or consist of wood and/or plastic and/or metal.
- the at least one projection and/or the at least one groove is/are preferably integrally formed on the element.
- "Moulded on” means here that the elements, including their projections and grooves, each form a solid body made of a uniform material. Alternatively, however, it is also possible to form the projections and grooves, for example, on strips and to attach this strip to the actual elements, for example using screws, adhesive or the like.
- FIG 1 Figure 12 shows two interconnected elements 2 of a system 1 according to an embodiment of the present invention.
- the elements 2 are elongate wooden beams which extend in a Z-direction and have a substantially circular cross-section. However, it should be pointed out that the elements 2 can in principle also have a different shape and/or consist of a different material.
- the elements 2 are designed to be positively and releasably attached to one another.
- the elements 2 each have a projection 3 of constant cross-section, which extends in the Z-direction and which, in figure 1 XY sectional view shown, is designed in a dovetail-like manner, and has a groove 4 designed to correspond to the projection 3 and which is arranged on the side of the corresponding element 2 opposite the projection 3 .
- the projections 3 and grooves 4 extend along the entire length of the elements 2 in the Z-direction. They are each integrally formed on the elements 2 .
- the projections 3 and the grooves 4 are each formed in such a way that a projection 3 of one element 2 is pivoted about a pivot axis 5 extending in the Z direction, which is formed by an outer edge of the associated groove 4 of the other element 2 is used positively in this groove 4 and can be solved from this.
- Each projection 3 has two opposite side walls 6 and 7, which are offset from one another in the Y direction in relation to a straight line 8 extending in the X direction, in this case such that the first side wall 6 ends where the opposite second Side wall 7 begins.
- the lengths of the side walls 6 and 7 are identical in this case.
- the side walls 6 and 7 can also have a length that differs from one another.
- the length and orientation of the first side wall 6 of the projection correspond to the length and orientation of a base side c of an equilateral triangle 9 shown in figure 1 indicated by dashed lines and in figure 2 is shown on an enlarged scale.
- the first side a of the two sides a and b of equal length extends from the pivot axis 5 to the outer corner of the first side wall 6 of the projection 3 and the second side b of the two sides a and b of the same length extends from the pivot axis 5 to the inner corner of the first side wall 6 of the projection 3.
- the angle ⁇ which the second side wall 7 of the projection 3 encloses with a straight line 11 extending in the Y-direction, is equal to that in the present case Angle ⁇ chosen.
- the angle ⁇ would then deviate from the angle ⁇ if the length of the second side wall 7 of the projection 3 were chosen to be different from the length of the first side wall 6 of the projection 3 .
- the lengths of the first side wall 6 and the second side wall 7 of the projection 3 can be freely selected.
- the length of the first side wall 6 and/or the second side wall 7 of the projection 3 is/are preferably between 10 mm and 40 mm.
- the groove 4 is designed to correspond to the projection 3 at least with regard to the side walls 6 and 7 of the projection 3 .
- the projection 3 and the groove 4 are designed in such a way that there is a predetermined play between them when the projection 3 is inserted into the groove 4 in a form-fitting manner.
- play is provided in the form of a predetermined gap size S of a gap 12 extending between the elements 2, which gap is suitably selected depending on the material and the dimensions of the elements 2.
- manufacturing tolerances of the elements 2 and the tendency to warp the same due to external influences, such as due to fluctuating temperatures, humidity or the like, must be taken into account.
- the projections 3 are each provided with an incision 13 which extends continuously in the Z-direction and, looking at the XY sectional view, is arranged transversely, in particular perpendicularly, to a straight line extending in the X-direction.
- the depth T and the width B of the incision 13 can be freely selected.
- a depth T of between 10 and 40 mm and/or a width B of between 1 mm and 3 mm is preferred.
- Elements 2 shown are as shown in figure 3 is shown, the elements 2 are initially positioned next to one another in such a way that a projection 3 of one element 2 points to the groove 4 of the other element 2 . Then the in figure 3 Element 2 shown on the left within the XY plane and the second side wall 7 of the projection 3 is pushed into the groove 4 in such a way that the side wall 7 comes into line contact with the associated side wall of the groove 4 . Then there is a pivoting movement in the direction of the arrow P of the left-hand element about the pivot axis 5, optionally paired with a slight movement of an element 2 in the Y-direction. The first side wall 6 of the projection 3 is also inserted into the groove 4 during this pivoting movement. In this way, a secure positive connection between the elements 2 is achieved.
- the system 1 shown here includes compensating elements 14 made of an elastic material, which are designed taking into account the predetermined gap size S in such a way that they can be inserted between the adjacent elements 2 during assembly. Thanks to such compensating elements 14, superfluous play between the elements 2 in the interconnected state can be compensated.
- the compensating elements 14 are provided in the form of elongate strips with a rectangular, constant cross section made of rubber-like material, which extend over the entire length of the elements 2 in the Z-direction.
- the compensating elements 14 also form sealing elements.
- the gap 12, as shown in figure 1 is shown, are sealed with a sealing compound 15 in particular on both sides, for example with a natural resin or the like.
- figure 4 shows three elements 2 of the system 1 according to a second embodiment of the present invention. Elements 2 differ from those in figure 1 Elements 2 shown that these have a rectangular cross section. Furthermore, both the projections 3 and the grooves 4 are provided with an incision 13, the incision 13 a projection 3 is aligned with the incision 13 of an associated groove 4. In the present case, the incisions 13 are positioned approximately centrally in relation to the projection 3 in the X-direction. However, it should be clear that off-center positioning is also possible.
- figure 5 shows elements 2 of a system 1 according to a third embodiment of the present invention.
- the middle elements 2 differ from that in figure 1 Elements 2 shown that the projection 3 and the groove 4 of a single element are not directly opposite each other but are arranged slightly at an angle to each other within the XY plane, whereby a rounding occurs when the elements 2 are assembled.
- the inside and/or outside of the individual elements 2 can be flat in the Z-direction, as indicated by the dashed line 16 .
- the two outer elements 2 are different from the middle elements 2 on the one hand formed only with a projection 3 and on the other hand only with a groove 4 and form corresponding end elements.
- the system 1 according to the invention is characterized in that, thanks to the specific design of the projections 3 and the grooves 4, the elements 2 can be manually assembled very easily, taking up a small assembly space, without additional fasteners and producing a secure form-fitting connection.
- the incisions 13 are advantageous in that they can be used to compensate for manufacturing inaccuracies and distortion of the elements 2 within certain limits. Although the provision of such cuts 13 is considered preferable, they are optional. The same applies to the compensating elements 14 and the sealing compound.
- Elements 2 shown can also represent components of a single system according to the invention, insofar as all elements 2 with matching projections 3 and Grooves 4 are provided.
- the elements 2 can in principle have any shape and size, even if the dovetail connection according to the invention is considered to be particularly suitable for larger elements 2 which are used, for example, to produce building floors, walls and ceilings, fences or the like.
- the material from which the elements 2 are made can in principle also be freely selected.
- the elements 2 can include or consist of wood and/or plastic and/or metal, with the dovetail-like connection according to the invention being considered to be particularly suitable for elements 2 made of wood.
- the projections 3 and the grooves 4 are formed onto the elements 2, that is to say they are formed in one piece with them. However, they can also be formed on strips, which are then connected to the actual elements 2, for example by means of screws and/or adhesives or the like, as is shown in figure 4 is indicated by the dashed lines 17.
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- Engineering & Computer Science (AREA)
- Architecture (AREA)
- Physics & Mathematics (AREA)
- Electromagnetism (AREA)
- Civil Engineering (AREA)
- Structural Engineering (AREA)
- Life Sciences & Earth Sciences (AREA)
- Wood Science & Technology (AREA)
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Abstract
Die vorliegende Erfindung betrifft ein System (1) mit zumindest zwei Elementen (2), insbesondere länglichen Bauelementen, die dazu ausgelegt sind, formschlüssig und lösbar aneinander befestigt zu werden, wozu ein Element (2) einen sich in einer Z-Richtung erstreckenden Vorsprung (3) konstanten Querschnitts, der, eine X-Y-Schnittansicht senkrecht zur Z-Richtung betrachtend, schwalbenschwanzartig ausgebildet ist, und das andere Element (2) eine korrespondierend zum Vorsprung (3) ausgebildete Nut (4) aufweist, wobei der Vorsprung (3) und die Nut (4) derart ausgebildet sind, dass sich der Vorsprung (3) im Rahmen einer Schwenkbewegung um eine sich in Z-Richtung erstreckende Schwenkachse (5), die durch eine äußere Kante der Nut (4) gebildet wird, formschlüssig in die Nut (4) einsetzen und aus dieser lösen lässt.The present invention relates to a system (1) with at least two elements (2), in particular elongate components, which are designed to be attached to one another in a form-fitting and detachable manner, for which purpose one element (2) has a projection ( 3) constant cross-section, which, considering an X-Y sectional view perpendicular to the Z-direction, is formed in a dovetail-like manner, and the other element (2) has a groove (4) formed corresponding to the projection (3), the projection (3) and the groove (4) is designed in such a way that the projection (3) fits positively into the groove as part of a pivoting movement about a pivot axis (5) extending in the Z direction and formed by an outer edge of the groove (4). (4) can be used and released from this.
Description
Die vorliegende Erfindung betrifft ein System mit zumindest zwei Elementen, insbesondere länglichen Bauelementen, die dazu ausgelegt sind, formschlüssig und lösbar aneinander befestigt zu werden, wozu ein Element einen sich in einer Z-Richtung erstreckenden Vorsprung konstanten Querschnitts, der, eine X-Y-Schnittansicht senkrecht zur Z-Richtung betrachtend, schwalbenschwanzartig ausgebildet ist, und das andere Element eine korrespondierend zum Vorsprung ausgebildete Nut aufweist. "Korrespondierend zum Vorsprung" ist dabei so zu verstehen, dass zumindest die einander gegenüberliegenden Seitenwände der Nut hinsichtlich ihrer Position und Ausrichtung im Raum der Position und Ausrichtung der einander gegenüberliegenden Seitenwände des Vorsprungs entsprechen, wobei der Abstand und die Länge der Seitenwände der Nut naturgemäß etwas größer als diejenigen der Seitenwände des Vorsprungs sein müssen, damit sich der Vorsprung formschlüssig in die Nut einsetzen lässt. Auf diesem Verständnis beruhen auch die nachfolgenden Ausführungen.The present invention relates to a system comprising at least two elements, in particular elongate structural elements, which are designed to be positively and releasably attached to one another, to which one element has a projection extending in a Z-direction and of constant cross-section which, an X-Y sectional view perpendicular viewed in the Z-direction, is designed in a dovetail-like manner, and the other element has a groove designed to correspond to the projection. "Corresponding to the projection" is to be understood in such a way that at least the opposite side walls of the groove correspond in terms of their position and orientation in space to the position and orientation of the opposite side walls of the projection, with the distance and the length of the side walls of the groove naturally being somewhat different must be larger than those of the side walls of the projection, so that the projection can be used in a form-fitting manner in the groove. The following explanations are also based on this understanding.
Systeme mit Elementen, die über eine schwalbenschwanzartige Verbindung lösbar aneinander befestigt werden können, sind im Stand der Technik in unterschiedlichsten Ausgestaltungen bekannt. Unter schwalbenschwanzartigen Verbindungen werden vorliegend solche Verbindungen verstanden, bei denen der Vorsprung und die Nut jeweils einander gegenüberliegende Seitenwände aufweisen, die in entgegengesetzte Richtungen geneigt sind, wobei die Breite des Vorsprungs in Auswärtsrichtung und die Breite der Nut in Einwärtsrichtung zunimmt. Schwalbenschwanzartige Verbindungen zeichnen sich durch einen sicheren Formschluss aus. Ein Nachteil besteht allerdings dahingehend, dass die Elemente nur in Z-Richtung, also in Erstreckungsrichtung der Nut aufeinander aufgeschoben werden können, was bei der Montage nicht immer wünschenswert ist. Insbesondere Elemente, die in Z-Richtung ein große Länge aufweisen, wie beispielsweise Balken oder dergleichen, lassen sich dann, wenn nur wenig Montageraum zur Verfügung steht, schwer oder gar nicht aneinander befestigen. In diesen Fällen wird regelmäßig auf andere Verbindungstechniken zurückgegriffen, wie beispielsweise auf die Verwendung von Schrauben oder dergleichen. Alternativ können einfache Steckverbindungen eingesetzt werden, die gegenüber schwalbenschwanzartigen Verbindungen jedoch einen weiteren Freiheitsgrad in Steckrichtung aufweisen und aus diesem Grund meist einer zusätzlichen Sicherung unter Verwendung von Dübeln oder dergleichen bedürfen, um einen stabilen Aufbau zu erzielen.Systems with elements that can be detachably attached to one another via a dovetail-like connection are known in the prior art in a wide variety of configurations. Dovetail joints are used herein to mean joints in which the projection and groove each have opposing sidewalls which are inclined in opposite directions, with the projection increasing in width outwards and the groove increasing in width inward. Dovetail connections are characterized by a secure form fit. However, there is a disadvantage in that the elements can only be slid onto one another in the Z direction, ie in the direction in which the groove extends, which is not always desirable during assembly. In particular, elements that have a great length in the Z-direction, such as beams or the like, can be difficult or impossible to fasten to one another if only little mounting space is available. In these cases, other connection techniques are regularly used, such as the use of screws or the like. Alternatively, simple plug-in connections can be used, which, however, have a further degree of freedom in the plug-in direction compared to dovetail-type connections and for this reason usually require additional securing using dowels or the like in order to achieve a stable structure.
Ausgehend von diesem Stand der Technik ist eine Aufgabe der vorliegenden Erfindung, ein alternatives System der eingangs genannten Art zu schaffen.Proceeding from this state of the art, an object of the present invention is to create an alternative system of the type mentioned at the outset.
Zur Lösung dieser Aufgabe schafft die vorliegende Erfindung ein System der eingangs genannten Art, das dadurch gekennzeichnet ist, dass der Vorsprung und die Nut derart ausgebildet sind, dass sich der Vorsprung im Rahmen einer Schwenkbewegung um eine sich in Z-Richtung erstreckende Schwenkachse, die durch eine äußere Kante der Nut gebildet wird, formschlüssig in die Nut einsetzen und aus dieser lösen lässt. Im Gegensatz zu einer herkömmlichen, durch einen Vorsprung und eine korrespondierende Nut gebildeten schwalbenschwanzartigen Verbindung lassen sich die Elemente des erfindungsgemäßen nicht nur miteinander verbinden, indem der Vorsprung in Z-Richtung in die Nut eingeschoben wird, sondern auch, indem der Vorsprung seitlich in Y-Richtung teilweise in die Nut eingesetzt und dann um die Schwenkachse geschwenkt wird. Entsprechend können Elemente, die in Y-Richtung Seite an Seite positioniert sind, miteinander verbunden werden, wodurch deutlich weniger Platz für die Montage benötigt wird. Gegenüber einer einfachen Steckverbindung besteht der Vorteil dahingehend, dass die Elemente in Steckrichtung nicht einfach voneinander getrennt werden können. Vielmehr ist zum Lösen der Verbindung eine komplexere Schwenkbewegung erforderlich, was zusätzliche Sicherungen in den meisten Fällen unnötig macht.To solve this problem, the present invention provides a system of the type mentioned, which is characterized in that the projection and the groove are designed in such a way that the projection within the scope of a pivoting movement about a pivot axis extending in the Z direction, which is an outer edge of the groove is formed, can be positively inserted into the groove and released from it. In contrast to a conventional dovetail-like connection formed by a projection and a corresponding groove, the elements of the invention can not only be connected to one another by the projection being pushed into the groove in the Z direction, but also by the projection being pushed laterally in the Y direction. Direction is partially used in the groove and then pivoted about the pivot axis. Similarly, elements positioned side-by-side in the Y-direction can be connected together, resulting in significantly fewer space is required for assembly. Compared to a simple plug-in connection, there is the advantage that the elements cannot be easily separated from one another in the plug-in direction. Rather, a more complex pivoting movement is required to release the connection, which in most cases makes additional safeguards unnecessary.
Gemäß einer Ausgestaltung der vorliegenden Erfindung sind die einander gegenüberliegenden Seitenwände des Vorsprungs, eine X-Y-Schnittansicht senkrecht zur Z-Richtung betrachtend, bezogen auf eine sich in X-Richtung erstreckende Gerade versetzt zueinander angeordnet, insbesondere derart, dass die erste Seitenwand dort endet, wo die gegenüberliegende zweite Seitenwand beginnt. Entsprechend kann zunächst die in Y-Richtung weiter vorstehende Seitenwand des Vorsprungs in einfacher Weise in die zugeordnete Nut eingesetzt werden, um dann die andere Seitenwand des Vorsprungs im Rahmen der Schwenkbewegung um die Schwenkachse in die Nut einzuführen.According to one embodiment of the present invention, the opposite side walls of the projection, viewed in an X-Y sectional view perpendicular to the Z-direction, are offset from one another in relation to a straight line extending in the X-direction, in particular such that the first side wall ends where the opposite second side wall begins. Accordingly, the side wall of the projection that protrudes further in the Y-direction can first be easily inserted into the associated groove in order to then insert the other side wall of the projection into the groove as part of the pivoting movement about the pivot axis.
Vorteilhaft entsprechen, eine X-Y-Schnittansicht senkrecht zur Z-Richtung betrachtend, die Länge und Ausrichtung der ersten Seitenwand des Vorsprungs der Länge und Ausrichtung einer Basisseite eines gleichseitigen Dreiecks, bei dem sich, den miteinander verbundenen Zustand zweier Elemente betrachtend, die erste Seite der beiden gleichlangen Seiten von Schenkachse zum äußeren Endpunkt der ersten Seitenwand des Vorsprungs und die zweite Seite der beiden gleichlangen Seiten von der Schwenkachse zum inneren Endpunkt der ersten Seitenwand des Vorsprungs erstreckt. Durch diese geometrische Formgebung ist sichergestellt, dass sich die erste Seitenwand problemlos in die Nut einschwenken lässt.Advantageously, considering an X-Y sectional view perpendicular to the Z-direction, the length and orientation of the first sidewall of the protrusion correspond to the length and orientation of a base side of an equilateral triangle in which, considering the interconnected state of two elements, the first side of the two equal sides extending from the pivot axis to the outer terminus of the first side wall of the projection and the second side of the two equal sides extends from the pivot axis to the inner terminus of the first side wall of the projection. This geometric shape ensures that the first side wall can be swiveled into the groove without any problems.
Bevorzugt ist, eine X-Y-Schnittansicht senkrecht zur Z-Richtung betrachtend, die Länge der einander gegenüberliegenden Seitenwände des Vorsprungs identisch, wodurch ein einfacher Aufbau unter Einsatz nur wenigen Materials erzielt wird.Preferred is the length of the opposite side walls of the protrusion when viewed in an XY sectional view perpendicular to the Z direction identical, resulting in a simple construction using only a few materials.
Vorteilhaft entspricht, eine X-Y-Schnittansicht senkrecht zur Z-Richtung betrachtend, ein Winkel, den die erste Seitenwand des Vorsprungs mit einer sich in Y-Richtung erstreckenden Geraden einschließt, einem Winkel, den die gegenüberliegende zweite Wand mit derselben Geraden einschließt. Auf diese Weise wird ein sehr guter Halt des Vorsprungs innerhalb der Nut erzielt.Advantageously, looking at an X-Y sectional view perpendicular to the Z-direction, an angle that the first side wall of the projection makes with a straight line extending in the Y-direction corresponds to an angle that the opposite second wall makes with the same straight line. In this way, a very good hold of the projection within the groove is achieved.
Gemäß einer Ausgestaltung der vorliegenden Erfindung beträgt, eine X-Y-Schnittansicht senkrecht zur Z-Richtung betrachtend, die Länge der ersten Seitenwand und/oder der zweiten Seitenwand des Vorsprungs zwischen 10mm und 40mm. Dies ist insbesondere bei großen Elementen, wie beispielsweise bei großen, beim Hausbau eingesetzten Balken von Vorteil, um eine sichere Verbindung zu gewährleisten.According to an aspect of the present invention, as viewed in an X-Y sectional view perpendicular to the Z-direction, the length of the first side wall and/or the second side wall of the protrusion is between 10mm and 40mm. This is particularly advantageous for large elements, such as large beams used in house construction, to ensure a secure connection.
Bevorzugt sind, eine X-Y-Schnittansicht senkrecht zur Z-Richtung betrachtend, der Vorsprung und die Nut derart ausgebildet, dass zwischen diesen ein vorbestimmtes Spiel vorhanden ist, wenn der Vorsprung formschlüssig in die Nut eingesetzt ist. Ein solches Spiel dient vor allem dazu, Fertigungstoleranzen bei der Herstellung der Elemente bzw. des Vorsprungs und der Nut und/oder einen Verzug derselben auszugleichen.Preferably, as viewed in an X-Y sectional view perpendicular to the Z-direction, the projection and the groove are formed such that there is a predetermined clearance therebetween when the projection is positively fitted into the groove. Such play serves primarily to compensate for manufacturing tolerances in the manufacture of the elements or the projection and the groove and/or a distortion of the same.
Das Spiel ist vorteilhaft in Form eines vorbestimmten Spaltmaßes bereitgestellt, um einen gleichmäßigen Ausgleich zu gewährleisten.The game is advantageously provided in the form of a predetermined gap size to ensure an even balance.
Bevorzugt weist das System Ausgleichselemente aus elastischem Werkstoff auf, die unter Berücksichtigung des vorbestimmten Spaltmaßes derart ausgebildet sind, dass sie sich während der Montage zwischen benachbarten Elementen einsetzten lassen, wobei die Ausgleichselemente als Dichtungselemente ausgeführt sein können. Mit solchen Ausgleichselementen lässt sich nicht benötigtes Spiel eliminieren, wobei Spielschwankungen im zusammengesetzten Zustand der Elemente kompensiert werden, beispielsweise durch Temperaturänderungen oder durch Feuchtigkeit hervorgerufene Spielschwankungen. Durch die Ausbildung der Ausgleichselemente als Dichtungselemente, beispielsweise durch geeignete Wahl des Materials und der Formgebung der Ausgleichselemente, kann eine wasser- und/oder feuchtigkeits- und/oder gasdichte Verbindung erzielt werden.The system preferably has compensating elements made of elastic material which, taking into account the predetermined gap size, are designed in such a way that they can be inserted between adjacent elements during assembly, with the compensating elements acting as sealing elements can be executed. Such compensating elements can be used to eliminate play that is not required, with play fluctuations being compensated for when the elements are assembled, for example as a result of temperature changes or play fluctuations caused by moisture. By designing the compensating elements as sealing elements, for example by suitably selecting the material and shaping the compensating elements, a watertight and/or moisture-tight and/or gas-tight connection can be achieved.
Vorteilhaft ist, eine X-Y-Schnittansicht senkrecht zur Z-Richtung betrachtend, der Vorsprung und/oder die Nut mit zumindest einem Einschnitt versehen, der sich in Z-Richtung durchgehend erstreckt und, eine X-Y-Schnittansicht senkrecht zur Z-Richtung betrachtend, quer, insbesondere senkrecht zu einer sich in X-Richtung erstreckenden Geraden angeordnet ist. Ein solcher Einschnitt erhöht die Elastizität des Vorsprungs und/oder der Nut, wodurch das Herstellen einer Verbindung zwischen zwei Elementen erleichtert werden kann, insbesondere, wenn diese bzw. ihr Vorsprung oder ihre Nut Fertigungsungenauigkeiten aufweisen oder sich verzogen haben. Auch kann der Vorsprung unabhängig vom verwendeten Material Dank eines solchen Einschnitts bezogen auf seine Abmessungen derart ausgebildet sein, dass er im in die Nut eingesetzten Zustand unter Erzeugung einer Vorspannung gegen die Seitenwände der Nut drückt, was in manchen Fällen wünschenswert sein kann, um eine schwerer lösbare Verbindung zwischen den Elementen zu erzielen.Advantageously, viewing an X-Y sectional view perpendicular to the Z direction, the projection and/or the groove is provided with at least one incision that extends continuously in the Z direction and, viewing an X-Y sectional view perpendicular to the Z direction, transversely, is arranged in particular perpendicular to a straight line extending in the X-direction. Such an incision increases the elasticity of the projection and/or the groove, as a result of which the establishment of a connection between two elements can be facilitated, in particular if this or its projection or groove has manufacturing inaccuracies or has become distorted. Also, regardless of the material used, thanks to such an incision, the projection can be designed in relation to its dimensions such that when inserted into the groove it presses against the side walls of the groove, generating a prestress, which in some cases can be desirable to avoid a heavier achieve a detachable connection between the elements.
Bevorzugt weist, eine X-Y-Schnittansicht senkrecht zur Z-Richtung betrachtend, der zumindest eine Einschnitt eine Tiefe zwischen 10mm und 40mm und/oder eine Breite zwischen 1mm und 3mm auf. Dies ist insbesondere bei großen Elementen, wie beispielsweise bei großen, beim Hausbau eingesetzten Balken von Vorteil, um die gewünschte Wirkung zu erzielen.Looking at an XY sectional view perpendicular to the Z-direction, the at least one incision preferably has a depth of between 10 mm and 40 mm and/or a width of between 1 mm and 3 mm. This is particularly advantageous for large elements, such as large beams used in building houses, in order to achieve the desired effect.
Gemäß einer Ausgestaltung der vorliegenden Erfindung ist der Vorsprung mit einem ersten Einschnitt und die Nut mit einem zweiten Einschnitt versehen, wobei der erste Einschnitt und der zweite Einschnitt miteinander fluchten. Ein solcher Aufbau ist hinsichtlich der beabsichtigten Wirkung der Einschnitte besonders effektiv.According to an embodiment of the present invention, the projection is provided with a first cut and the groove is provided with a second cut, the first cut and the second cut being aligned with each other. Such a structure is particularly effective in terms of the intended effect of the incisions.
Jedes Element weist bevorzugt zumindest einen Vorsprung und zumindest eine korrespondierende Nut auf, die an verschiedenen, insbesondere an einander gegenüberliegenden Seiten des Elementes angeordnet sind. Somit lassen sich eine Vielzahl von Elementen in Reihe miteinander verbinden.Each element preferably has at least one projection and at least one corresponding groove, which are arranged on different sides of the element, in particular on opposite sides. In this way, a large number of elements can be connected to one another in series.
Die Elemente können Holz und/oder Kunststoff und/oder Metall aufweisen oder daraus bestehen.The elements can include or consist of wood and/or plastic and/or metal.
Der zumindest eine Vorsprung und/oder die zumindest eine Nut ist/sind bevorzugt einteilig an dem Element angeformt. "Angeformt" bedeutet hier, dass die Elemente einschließlich ihrer Vorsprünge und Nuten jeweils Vollkörper aus einem einheitlichen Material bilden. Alternativ ist es aber auch möglich, die Vorsprünge und Nuten beispielsweise an Leisten auszubilden und diese Leiste an den eigentlichen Elementen zu befestigen, beispielsweise unter Verwendung von Schrauben, Klebstoff oder dergleichen.The at least one projection and/or the at least one groove is/are preferably integrally formed on the element. "Moulded on" means here that the elements, including their projections and grooves, each form a solid body made of a uniform material. Alternatively, however, it is also possible to form the projections and grooves, for example, on strips and to attach this strip to the actual elements, for example using screws, adhesive or the like.
Weitere Merkmale und Vorteile der vorliegenden Erfindung werden anhand der nachfolgenden Beschreibung unter Bezugnahme auf die beiliegende Zeichnung deutlich. Darin ist
-
eine X-Y-Schnittansicht zweier miteinander verbundener Elemente eines Systems gemäß einer Ausführungsform der vorliegenden Erfindung;Figur 1 -
eine vergrößerte Ansicht eines Ausschnitts inFigur 2 ;Figur 1 -
eine X-Y-Schnittansicht der inFigur 3 gezeigten Elemente während des Herstellens einer Verbindung;Figur 1 -
eine X-Y-Schnittansicht dreier miteinander verbundener Elemente eines Systems gemäß einer zweiten Ausführungsform der vorliegenden Erfindung; undFigur 4 -
eine schematische X-Y-Schnittansicht von vier miteinander verbundener Elemente eines Systems gemäß einer dritten Ausführungsform der vorliegenden Erfindung.Figur 5
-
figure 1 an XY sectional view of two interconnected elements of a system according to an embodiment of the present invention; -
figure 2 an enlarged view of a detail infigure 1 ; -
figure 3 an XY sectional view of the infigure 1 items shown while establishing a connection; -
figure 4 an XY sectional view of three interconnected elements of a system according to a second embodiment of the present invention; and -
figure 5 a schematic XY sectional view of four interconnected elements of a system according to a third embodiment of the present invention.
Die Vorsprünge 3 und die Nuten 4 sind jeweils derart ausgebildet, dass sich ein Vorsprung 3 des einen Elementes 2 im Rahmen einer Schwenkbewegung um eine sich in Z-Richtung erstreckende Schwenkachse 5, die durch eine äußere Kante der zugeordneten Nut 4 des anderen Elementes 2 gebildet wird, formschlüssig in diese Nut 4 einsetzen und aus dieser lösen lässt. Jeder Vorsprung 3 weist zwei einander gegenüberliegende Seitenwände 6 und 7 auf, die bezogen auf eine sich in X-Richtung erstreckende Gerade 8 in Y-Richtung versetzt zueinander angeordnet sind, vorliegend derart, dass die erste Seitenwand 6 dort endet, wo die gegenüber liegende zweite Seitenwand 7 beginnt. Die Längen der Seitenwände 6 und 7 sind vorliegend identisch. Alternativ können die Seitenwände 6 und 7 aber auch eine voneinander abweichende Länge aufweisen. Die Länge und Ausrichtung der ersten Seitenwand 6 des Vorsprungs entsprechen der Länge und Ausrichtung einer Basisseite c eines gleichseitigen Dreiecks 9, das in
Der Winkel β, den die zweite Seitenwand 7 des Vorsprungs 3 mit einer sich in Y-Richtung erstreckenden Gerade 11 einschließt, ist vorliegend gleich dem Winkel α gewählt. Der Winkel β würde dann vom Winkel α abweichen, wenn die Länge der zweiten Seitenwand 7 des Vorsprungs 3 zur Länge der ersten Seitenwand 6 des Vorsprungs 3 verschieden gewählt wäre. Die Längen der ersten Seitenwand 6 und der zweiten Seitenwand 7 des Vorsprungs 3 sind grundsätzlich frei wählbar. Bei größeren Elementen 2, wie beispielsweise den dargestellten Holzbalken, beträgt/betragen die Länge der ersten Seitenwand 6 und/oder der zweiten Seitenwand 7 des Vorsprungs 3 bevorzugt zwischen 10mm und 40mm. Die Nut 4 ist zumindest hinsichtlich der Seitenwände 6 und 7 des Vorsprungs 3 korrespondierend zum Vorsprung 3ausgebildet. Vorliegend sind der Vorsprung 3 und die Nut 4 derart ausgebildet, dass zwischen diesen ein vorbestimmtes Spiel vorhanden ist, wenn der Vorsprung 3 formschlüssig in die Nut 4 eingesetzt ist. Das Spiel ist im dargestellten Ausführungsbeispiel in Form eines vorbestimmten Spaltmaßes S eines sich zwischen den Elementen 2 erstreckenden Spaltes 12 bereitgestellt, das in Abhängigkeit vom Material und den Abmessungen der Elemente 2 geeignet gewählt wird. Insbesondere sind hierbei Fertigungstoleranzen der Elemente 2 sowie die Neigung zum Verzug derselben durch äußere Einflüsse zu beachten, wie beispielsweise aufgrund schwankender Temperaturen, Feuchtigkeit oder dergleichen. Bei der dargestellten Ausführungsform sind die Vorsprünge 3 jeweils mit einem Einschnitt 13 versehen, der sich in Z-Richtung durchgehend erstreckt und, die X-Y-Schnittansicht betrachtend, quer, insbesondere senkrecht zu einer sich in X-Richtung erstreckenden Geraden angeordnet ist. Die Tiefe T und die Breite B des Einschnitts 13 sind grundsätzlich frei wählbar. Bei Elementen 2 in Form der dargestellten Holzbalken wird eine Tiefe T zwischen 10 und 40 mm und/oder eine Breite B zwischen 1 mm und 3 mm bevorzugt.The angle β, which the
Zur Montage der in
Das in
Nachdem die Elemente 2 miteinander verbunden wurden, kann der Spalt 12, wie es in
Das erfindungsgemäße System 1 zeichnet sich dadurch aus, dass sich die Elemente 2 Dank der spezifischen Ausbildung der Vorsprünge 3 und der Nuten 4 sehr einfach unter Beanspruchung eines geringen Montageraums ohne zusätzliche Befestigungsmittel unter Herstellung einer sicheren formschlüssigen Verbindung manuell montieren lassen. Die Einschnitte 13 sind dahingehend vorteilhaft, dass sich mit ihnen Fertigungsungenauigkeiten und Verzug der Elemente 2 in gewissen Grenzen kompensieren lassen. Auch wenn das Vorsehen solcher Einschnitte 13 als bevorzugt angesehen wird, sind diese optional. Gleiches gilt für die Ausgleichselemente 14 und die Dichtmasse.The
Es sollte klar sein, dass die in den
Ferner sei darauf hingewiesen, dass die zuvor beschriebenen Ausführungsformen lediglich als Beispiele dienen und nicht als einschränkend zu verstehen sind. Vielmehr sind Modifikationen und/oder Änderungen möglich, ohne den durch die beiliegenden Ansprüche definierten Schutzbereich zu verlassen.Furthermore, it should be noted that the embodiments described above serve only as examples and are not to be understood as limiting. On the contrary, modifications and/or changes are possible without departing from the scope of protection as defined by the appended claims.
- 11
- Systemsystem
- 22
- Elementelement
- 33
- Vorsprunghead Start
- 44
- Nutgroove
- 55
- Schwenkachsepivot axis
- 66
- erste Seitenwandfirst side wall
- 77
- zweite Seitenwandsecond side wall
- 88th
- GeradeStraight
- 99
- Dreiecktriangle
- 1010
- GeradeStraight
- 1111
- GeradeStraight
- 1212
- Spaltgap
- 1313
- Einschnittincision
- 1414
- Ausgleichselementcompensation element
- 1515
- Dichtmassesealant
- 1616
- gestrichelte Liniedashed line
- 1717
- gestrichelte Liniedashed line
- a,b,cABC
-
Seiten des gleichschenkligen Dreiecks 9sides of
isosceles triangle 9 - αa
- Winkelangle
- ββ
- Winkelangle
- PP
- PfeilArrow
- ss
- Spaltmaßgap size
- TT
- Tiefedepth
- BB
- BreiteBroad
Claims (15)
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DE202021105892.7U DE202021105892U1 (en) | 2021-10-28 | 2021-10-28 | System with detachably connectable elements |
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Citations (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
DE19650101A1 (en) * | 1995-12-04 | 1997-06-05 | Johann Priewasser | Tongue=and=groove join for wooden sauna etc. Cubicle walling |
CA2233583A1 (en) * | 1997-04-24 | 1998-10-24 | Sir Walter Lindal | Wooden frame building construction |
DE60213098T2 (en) * | 2001-07-09 | 2006-12-21 | Société de Technologie Michelin | SLOTTED TREADS |
Family Cites Families (2)
Publication number | Priority date | Publication date | Assignee | Title |
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DE202008009505U1 (en) | 2008-07-15 | 2008-10-23 | Perr, Christoph | module |
DE102012004128A1 (en) | 2011-03-10 | 2012-09-13 | Creotecc Gmbh | Standardized fixing system for photovoltaic modules and assembly methods |
-
2021
- 2021-10-28 DE DE202021105892.7U patent/DE202021105892U1/en active Active
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- 2022-10-20 EP EP22202782.3A patent/EP4174240A1/en active Pending
Patent Citations (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
DE19650101A1 (en) * | 1995-12-04 | 1997-06-05 | Johann Priewasser | Tongue=and=groove join for wooden sauna etc. Cubicle walling |
CA2233583A1 (en) * | 1997-04-24 | 1998-10-24 | Sir Walter Lindal | Wooden frame building construction |
DE60213098T2 (en) * | 2001-07-09 | 2006-12-21 | Société de Technologie Michelin | SLOTTED TREADS |
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